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日常生活抓握活动中手部协调性的生物力学特征

Biomechanical Characteristics of Hand Coordination in Grasping Activities of Daily Living.

作者信息

Liu Ming-Jin, Xiong Cai-Hua, Xiong Le, Huang Xiao-Lin

机构信息

Institute of Rehabilitation and Medical Robotics, State Key Lab of Digital Manufacturing Equipment and Technology, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.

Foisie School of Business, Worcester Polytechnic Institute, Worcester, MA 01609-2280, United States of America.

出版信息

PLoS One. 2016 Jan 5;11(1):e0146193. doi: 10.1371/journal.pone.0146193. eCollection 2016.

Abstract

Hand coordination can allow humans to have dexterous control with many degrees of freedom to perform various tasks in daily living. An important contributing factor to this important ability is the complex biomechanical architecture of the human hand. However, drawing a clear functional link between biomechanical architecture and hand coordination is challenging. It is not understood which biomechanical characteristics are responsible for hand coordination and what specific effect each biomechanical characteristic has. To explore this link, we first inspected the characteristics of hand coordination during daily tasks through a statistical analysis of the kinematic data, which were collected from thirty right-handed subjects during a multitude of grasping tasks. Then, the functional link between biomechanical architecture and hand coordination was drawn by establishing the clear corresponding causality between the tendinous connective characteristics of the human hand and the coordinated characteristics during daily grasping activities. The explicit functional link indicates that the biomechanical characteristic of tendinous connective architecture between muscles and articulations is the proper design by the Creator to perform a multitude of daily tasks in a comfortable way. The clear link between the structure and the function of the human hand also suggests that the design of a multifunctional robotic hand should be able to better imitate such basic architecture.

摘要

手部协调性使人类能够进行多自由度的灵活控制,从而在日常生活中执行各种任务。人类手部复杂的生物力学结构是这一重要能力的一个重要促成因素。然而,要在生物力学结构和手部协调性之间建立明确的功能联系具有挑战性。目前尚不清楚哪些生物力学特征对手部协调性起作用,以及每个生物力学特征具体有什么影响。为了探索这种联系,我们首先通过对运动学数据进行统计分析,考察了日常任务中的手部协调性特征,这些数据是从30名右利手受试者在多种抓握任务中收集的。然后,通过在人手的肌腱连接特征与日常抓握活动中的协调特征之间建立明确的对应因果关系,得出了生物力学结构与手部协调性之间的功能联系。这种明确的功能联系表明,肌肉与关节之间的肌腱连接结构的生物力学特征是造物主的恰当设计,以便以舒适的方式执行多种日常任务。人手结构与功能之间的明确联系还表明,多功能机器人手的设计应该能够更好地模仿这种基本结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72ce/4701170/29c6c9660d05/pone.0146193.g001.jpg

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